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Default Fluorine-19 NMR and computational quantification of isoflurane binding to the voltage-gated sodium channel NaChBac [Biophysics and Computational Biology]

Fluorine-19 NMR and computational quantification of isoflurane binding to the voltage-gated sodium channel NaChBac [Biophysics and Computational Biology]

Monica N. Kinde, Vasyl Bondarenko, Daniele Granata, Weiming Bu, Kimberly C. Grasty, Patrick J. Loll, Vincenzo Carnevale, Michael L. Klein, Roderic G. Eckenhoff, Pei Tang, Yan Xu...
Date: 2016-11-29

Voltage-gated sodium channels (NaV) play an important role in general anesthesia. Electrophysiology measurements suggest that volatile anesthetics such as isoflurane inhibit NaV by stabilizing the inactivated state or altering the inactivation kinetics. Recent computational studies suggested the existence of multiple isoflurane binding sites in NaV, but experimental binding data are... Read More


PNAS:
Number: 48
Volume: 113
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[NMR paper] Fluorine-19 NMR and computational quantification of isoflurane binding to the voltage-gated sodium channel NaChBac.
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